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Crustal and uppermost mantle structure of southern Norway: results from surface wave analysis of ambient seismic noise and earthquake data

机译:挪威南部的地壳和最上层地幔结构:环境地震噪声和地震数据的表面波分析结果

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摘要

We use ambient seismic noise and earthquake recordings on a temporary regional network in southern Norway to produce Rayleigh and Love wave phase velocity maps from 3 to 67 s period. Local dispersion curves are then jointly inverted for a 3-D shear wave velocity model of the region. We perform a two-step inversion approach. First, a direct search, Monte Carlo algorithm is applied to find best fitting isotropic velocity depth profiles. Those profiles are then used as initial models for a linearised inversion which takes into account radial anisotropy in the shear wave structure. Results reveal crustal as well as uppermost mantle structures in the studied region. Velocity anomalies in the upper crust are rather small in amplitude and can in most parts be related to surface geology in terms of rock densities. Old tectonic units like the Oslo Graben (300–240 Ma) and the Caledonian nappes (440–410 Ma) are clearly imaged. Furthermore, we find clear indications for localized crustal anisotropy of about 3 per cent. Despite generally poor resolution of interface depths in surface wave inversion, we find lateral variation of crustal thickness in agreement with previous studies. We are able to confirm and locate the transition from a slow lithospheric upper mantle underneath southern Norway to a fast shield-like mantle towards Sweden. This article has been accepted for publication in Geophysical Journal International © 2012 The Authors Geophysical Journal International © 2012 RAS Published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.
机译:我们在挪威南部的一个临时区域网络上使用环境地震噪声和地震记录来生成3到67 s周期的瑞利和洛夫波相速度图。然后,针对该区域的3-D剪切波速度模型,将局部分散曲线联合反转。我们执行两步反演方法。首先,直接搜索,应用蒙特卡罗算法来找到最佳拟合的各向同性速度深度剖面。然后,将这些轮廓用作线性化反演的初始模型,该模型考虑了剪切波结构中的径向各向异性。结果揭示了研究区域的地壳以及最上层的地幔结构。上地壳的速度异常幅度很小,在岩石密度方面,大部分与地表地质有关。像奥斯陆格拉本(300-240 Ma)和加里多尼亚岩浆(440-410 Ma)这样的旧构造单元清晰成像。此外,我们发现明显的迹象表明局部地壳各向异性约为3%。尽管在表面波反演中界面深度的分辨率通常很差,但我们发现地壳厚度的横向变化与先前的研究一致。我们能够确定并确定从挪威南部下方的慢岩石圈上地幔到瑞典的快速盾构状地幔的过渡。该文章已被国际地球物理期刊©2012接受发表。国际地球物理期刊©2012 RAS由牛津大学出版社代表皇家天文学会出版。版权所有。

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